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Integrated FBG Sensor Responses and Full Field Thermo-electric Stress Approach to Monitor Damage Accumulation in Glass Fibre Reinforced Composite Plate

机译:集成的FBG传感器响应和全场热电应力方法,以监测玻璃纤维增​​强复合板损伤积累

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Monitoring internal damage status of advanced composite components with distributed sensor network has shown significant success in recent research works. However, application of such a system in a full scale structure is a critically challenging task and maintaining such a system during life time operations is an extremely difficult. An additional non-contactable full field strain measurement system being used to measure outer surface strain field of a composite sample while an embedded FBG sensor closer to an internal void being used to monitor localized strain variation. Recent developments in miniature low-cost microbolometer technology have paved the way to use full field thermo-elastic stress mapping using relatively inexpensive Infra-Red cameras. This paper details a comparison of strain measurements observed from FBG sensors embedded in a composite plate sample at a closer location to a void and full field thermo-elastic stress map. The test coupons were fabricated with a purposely created delamination and sample was loaded by quasi-static and low cycle fatigue uni-axial loads. The FBG responses and IR images were recorded in frequent intervals in order to track the delamination growth. Further the strain variations were studied using a detailed FEA and compared with experimental strain and full field Thermo-elastic stress map.
机译:监控具有分布式传感器网络的先进复合组件的内部损坏状态在最近的研究工作中表现出显着的成功。然而,在满量程结构中应用这种系统是一个严重挑战的任务,并且在生命期间保持这种系统是一个极其困难的。用于测量复合样品的外表面应变场,同时嵌入式FBG传感器更靠近用于监测局部应变变化的嵌入式FBG传感器来测量复合样品的外表面应变场。微型低成本微生物仪技术的最新发展已经铺平了使用相对便宜的红外线相机使用全场热弹性应力测绘的方法。本文详细说明了从复合板样品中嵌入的FBG传感器观察到的菌株测量的比较,以在更近的位置到空隙和全场热弹性应力图。测试试样用无意产生的分层制造,并通过准静态和低循环疲劳单轴载荷加载样品。以频繁的间隔记录FBG响应和IR图像,以跟踪分层生长。此外,使用详细的FEA研究了应变变化,并与实验室应变和全场热弹性应力图进行了比较。

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